Bernal, Sergio Lopez and Martins, Daniel Perez and Celdran, Alberto Huertas (2020) Distributed Denial of Service Cyberbioattack Affecting Bacteria-based Biosensing Systems. In: 2020 17th International Conference on Electrical Engineering/Electronics, Computer, Telecommunications and Information Technology (ECTI-CON), 2020-06-24 - 2020-06-27, Phuket, Thailand.
Bernal, Sergio Lopez and Martins, Daniel Perez and Celdran, Alberto Huertas (2020) Distributed Denial of Service Cyberbioattack Affecting Bacteria-based Biosensing Systems. In: 2020 17th International Conference on Electrical Engineering/Electronics, Computer, Telecommunications and Information Technology (ECTI-CON), 2020-06-24 - 2020-06-27, Phuket, Thailand.
Bernal, Sergio Lopez and Martins, Daniel Perez and Celdran, Alberto Huertas (2020) Distributed Denial of Service Cyberbioattack Affecting Bacteria-based Biosensing Systems. In: 2020 17th International Conference on Electrical Engineering/Electronics, Computer, Telecommunications and Information Technology (ECTI-CON), 2020-06-24 - 2020-06-27, Phuket, Thailand.
Abstract
Bacteria are microorganisms found in the human body, and almost in everywhere, that recently they have been investigated as human gut's health indicator. After colonizing a surface, bacterial populations form biofilms, which is their natural protection mechanism against physical attacks, harmful chemical compounds and environmental changes. Recent studies have shown that bacteria can be engineered to act as biosensors and bioactuators, externally controlled by electric signals. Despite the benefits provided by biosensors in terms of metabolic diseases diagnosis and treatment, they also open the door to novel cyberbioattacks due to the impossibility of implementing security mechanisms in resource-constrained engineered bacteria. In this context, we have reproduced a distributed denial of service (DDoS) cyberbioattack performed by engineered bacteria that diffuse jamming signals affecting the production of the biofilm structure. A pool of experiments has shown that higher amplitudes and periods in the signal controlling the engineered bacteria have a greater impact on the biofilm disruption.
| Item Type: | Conference or Workshop Item (Paper) |
|---|---|
| Uncontrolled Keywords: | Microorganisms, Sociology, Statistics, Computer crime, Jamming, Biosensors, Production |
| Divisions: | Faculty of Science and Health Faculty of Science and Health > Computer Science and Electronic Engineering, School of |
| SWORD Depositor: | Unnamed user with email elements@essex.ac.uk |
| Depositing User: | Unnamed user with email elements@essex.ac.uk |
| Date Deposited: | 25 Aug 2026 10:44 |
| Last Modified: | 25 Aug 2026 10:44 |
| URI: | http://repository.essex.ac.uk/id/eprint/36730 |
Available files
Filename: Distributed Denial of Service Cyberbioattack Affecting Bacteria-based Biosensing Systems.pdf